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First Case of Brevetoxicosis Linked to Rough-Toothed Dolphin (Steno bredanensis) Mass-Mortality Event in Eastern Central Atlantic Ocean: A Climate Change Effect?

Artículo de investigación publicado en Frontiers in Marine Science

28 de febrero de 2022

Harmful algal blooms (HABs) have been increasingly recorded over the last decades and much work has linked these events to multiple oceanographic and climate disturbances. HABs can affect ecosystems either as events that affect dissolved oxygen, clog fish gills, or smother corals or through the production of biotoxins which affect living marine resources through food web transfers or aerosols. HAB represent a natural driver of decline and potential extinction of aquatic organisms, from invertebrates to mammals, which may offer little evolutionary adaptation particularly in very high and long-lasting exposures. Despite numerous multispecies mass-mortality events linked to HAB-associated biotoxicosis globally, there are no records in cetaceans off the central eastern Atlantic Ocean. Herein, we report the epidemiology, pathologic, microbiologic and toxicologic investigation results attesting to the first documentation of cetacean mass-mortality in European waters associated with brevetoxins. Twelve rough-toothed dolphins (Steno bredanensis) were found dead adrift or beached along the southwestern coast of Gran Canaria from April 28th to May 7th, 2008. Although pathologic examinations were limited by moderate to advanced autolysis and decomposition of the carcasses, consistent findings included multisystemic hemorrhage and undigested ingesta within the gastric compartments, mainly salema porgy (Sarpa salpa). Toxicologic analysis of gastric contents identified PbTx2 and PbTx3 brevetoxins. Our results provide compelling toxicopathologic evidence of fatal brevetoxicosis in a cohort of rough-toothed dolphins. These data add to the limited knowledge on pathology of HAB in cetaceans and provide the first account of brevetoxicosis in European waters. No other mass-mortality or individual fatality of any cetacean species has been linked to brevetoxicosis in the Canary Islands since this event




Fernandez A., Sierra E., Arbelo M., Gago-Martinez A., Leao-Martins JM., Garcia-Alvarez N., Bernaldo de Quiros Y., Arregui M., Vela AI. y Diaz-Delgado J.




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First Case of Brevetoxicosis Linked to Rough-Toothed Dolphin (Steno bredanensis) Mass-Mortality Event in Eastern Central Atlantic Ocean: A Climate Change Effect?





Participantes:

Universidad de Las Palmas de Gran CanariaInstituto Universitario de Sanidad Animal y Seguridad Alimentaria (IUSA). Facultad de Veterinaria. Universidad de Las Palmas de Gran Canaria (ULPGC).

Universidad de VigoDepartamento de Química Analítica y de Alimentos. Centro de Investigaciones Biomédicas (CINBIO). Universidad de Vigo.

Universidad ComplutenseServicio de Identificación y Caracterización Microbiana (ICM). Centro de Vigilancia Sanitaria Veterinaria (VISAVET). Universidad Complutense (UCM).

Universidad ComplutenseDepartamento de Sanidad Animal. Facultad de Veterinaria. Universidad Complutense (UCM).







Frontiers in Marine Science
FACTOR YEAR Q
3.700 2022

ISSN: 2296-7745



TÍTULO: First Case of Brevetoxicosis Linked to Rough-Toothed Dolphin (Steno bredanensis) Mass-Mortality Event in Eastern Central Atlantic Ocean: A Climate Change Effect?


REVISTA: Front Mar Sci


NUMERACIÓN: 9:9834051


AÑO: 2022


EDITORIAL: Frontiers


AUTORES: Fernandez A., Sierra E., Arbelo M., Gago-Martinez A., Leao-Martins JM., Garcia-Alvarez N., Bernaldo de Quiros Y., Arregui M., Vela AI. and Diaz-Delgado J.


Ana Isabel Vela Alonso

DOI: https://doi.org/10.3389/fmars.2022.834051


CITA ESTA PUBLICACIÓN:

Fernandez A., Sierra E., Arbelo M., Gago-Martinez A., Leao-Martins JM., Garcia-Alvarez N., Bernaldo de Quiros Y., Arregui M., Vela AI. y Diaz-Delgado J. First Case of Brevetoxicosis Linked to Rough-Toothed Dolphin (Steno bredanensis) Mass-Mortality Event in Eastern Central Atlantic Ocean: A Climate Change Effect?. Frontiers in Marine Science. 9:9834051. 2022. (A). ISSN: 2296-7745. DOI: 10.3389/fmars.2022.834051


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